ArticleJournal of advanced research2026
Multi-target regulation by artemether in MAFLD through EGFR/HSP90 pathways.
Article in Journal of advanced research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Who cites it
5 citing papers in PubMed.
- Artemisinin and its derivatives for metabolic syndrome: From multi‑target mechanisms to translational opportunities (Review).Molecular medicine reports · 2026Review
- Article
- Computational pharmacovigilance of tranexamic acid: implications for intracerebral hemorrhage based on FAERS database and network toxicology.Frontiers in pharmacology · 2026Article
- The endo-lysosomal-lipid axis: bidirectional interactions between membrane trafficking dysfunction and lipid metabolic disorders.Frontiers in cell and developmental biology · 2026Review
- Single-cell sequencing and organoids: applications in organ development and disease.Molecular biomedicine · 2025Review
Corrections and comments
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Authors and funding
7 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
introductionThe prevalence of metabolic dysfunction-associated fatty liver disease (MAFLD) is rising, while current pharmacological treatments are often limited by adverse effects. Artemether (Art), a derivative of artemisinin, has demonstrated therapeutic potential against MAFLD, but its direct molecular targets remain unclear.
objectivesThis work focuses on Art's therapeutic effects and molecular targets in MAFLD.
methodsIn this study, MAFLD was induced in C57BL/6J male mice via high-fat diets, followed by treatment with Art at 10 or 50 mg/kg·bw/d; obeticholic acid served as a positive control. Glucose tolerance, serum biochemistry, and liver histology were assessed. Fatty acid-induced MAFLD models in HepG2 and primary mouse hepatocytes were treated with Art (5 µM or 25 µM), and lipid accumulation was evaluated. Protein target identification involved drug affinity responsive target stability (DARTS), cellular thermal shift assay (CESTA), chemical proteomics, and molecular docking etc. Heat shock protein 90 (HSP90) and epidermal growth factor receptor (EGFR) were confirmed as direct targets of Art through over-expression, inhibition, and knockdown techniques in cells and mice.
resultsArt dose-dependently reduced hepatic lipid accumulation in MAFLD mice and suppressed oleic-palmitic acid-induced lipid droplet formation in vitro. HSP90 and EGFR were identified as direct binding targets of Art, which disrupted the HSP90-EGFR complex, reducing EGFR stability and expression. The therapeutic efficacy of Art was not further enhanced when administered following HSP90 or EGFR knockdown, confirming that HSP90 and EGFR function as key molecular targets of Art.
conclusionThese findings identify EGFR as a key target of Art, modulated directly or via HSP90, thereby offering new insights into Art's multi-target therapeutic mechanism in MAFLD.
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